ABSTRACT Equine protozoal myeloencephalitis can cause acute infections with rapid onset of neurologic signs, necessitating immediate empiric therapy with antiprotozoal medication. The objective of the study was to identify when concentrations of diclazuril reached the MIC of Sarcocystis neurona in CSF (1 ng/mL) of healthy adult horses after a single ...
Elizabeth J. Treece +7 more
wiley +1 more source
Muscle-specific differences in MyHC isoform abundance, metabolic profile and gene expression in cattle. [PDF]
Urrutia O, Mendizabal JA, Soret B.
europepmc +1 more source
Proteomic Insights into the Mechanism by Which Ferulic Acid Promotes Skeletal Muscle Fiber Type Conversion in Mongolian Horses. [PDF]
Gong W +9 more
europepmc +1 more source
Machine-learning classification of motor unit types in the adult mouse. [PDF]
Martínez-Silva ML +5 more
europepmc +1 more source
Anti-Receptor Activator of Nuclear Factor-κB Ligand Improves Muscle Dysfunction and Strengthens Bone in Laminin-α2-Deficient dy<sup>2J</sup>/dy<sup>2J</sup> Dystrophic Mice. [PDF]
Bouredji Z +7 more
europepmc +1 more source
Coexpression of two isoforms of calsequestrin in rabbit slow-twitch muscle
The cardiac and fast-twitch skeletal muscle forms of the Ca2(+)-binding protein calsequestrin (CS) are the products of two different genes, both of which are transcribed in slow-twitch skeletal muscle, though at much different rates (Scott et al., 1988., Fliegel et al., 1989).
E, Damiani, P, Volpe, A, Margreth
openaire +3 more sources
ATP depletion in slow-twitch red muscle of rat
Rat slow-twitch muscle, in contrast to fast-twitch muscle, maintains its ATP content near normal during intense stimulation conditions that produce rapid fatigue. An extensive depletion of adenine nucleotide content by the deamination of AMP to IMP + NH3, typical of fast-twitch muscle, does not occur.
D M, Whitlock, R L, Terjung
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Regulation of oxygen consumption in fast- and slow-twitch muscle
Phosphorus nuclear magnetic resonance spectra and steady-state O2 consumption rates were obtained from ex vivo arterially perfused cat biceps brachii (fast twitch) and soleus (slow twitch) muscles during and after periods of isometric twitch stimulation at 30 degrees C.
M J, Kushmerick, R A, Meyer, T R, Brown
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Adenine nucleotide degradation in slow-twitch red muscle
The catabolism of adenine nucleotides (AdN) in rat soleus muscle (predominantly slow twitch) is very different from that in fast-twitch muscle. AMP deaminase is highly inhibited during brief (3 min) intense (120 tetani/min) in situ stimulation, resulting in little inosine 5'-monophosphate (IMP) accumulation (0.21 mumol/g).
P C, Tullson +2 more
openaire +3 more sources
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Comparative transcriptome analysis of fast twitch muscle and slow twitch muscle in Takifugu rubripes
Comparative Biochemistry and Physiology Part D: Genomics and Proteomics, 2017Fast twitch muscle and slow twitch muscle are two important organs of Takifugu rubripes. Both tissues are of ectodermic origin, and the differences between the two muscle fibers reflect the differences in their myofibril protein composition and molecular structure.
Chen Jiang, Xuemei Qiu, Derong Kong
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